We introduce and demonstrate a new error control scheme for the computation of far-zone interactions in the multilevel fast multipole algorithm when implemented within a multiple-precision arithmetic framework. The proposed scheme provides the optimum truncation numbers as well as the machine precisions given the desired relative error thresholds and the box sizes for the translation operator at all frequencies. In other words, unlike the previous error control schemes which are valid only for high-frequency problems. the proposed scheme can be used to control the error across both low- and high-frequency problems. Optimum truncation numbers and machine precisions are calculated for a wide range of box sizes and desired relative error thres...
Novel formulas are presented that allow the rapid estimation of the number of terms L that needs to ...
Abstract—The multilevel fast multipole algorithm (MLFMA) is used in computing acoustic and electroma...
We present a low-frequency fast multipole method for the solution of three-dimensional electromagnet...
We present a new error control method that provides the truncation numbers as well as the required d...
IEEEThe current state-of-the-art error control of Multilevel Fast Multipole Algorithm (MLFMA) is val...
This paper presents an extension of a new approach to select the truncation number for translation o...
Multiple-precision arithmetic (MPA) is used to prevent low-frequency breakdowns in the diagonalizati...
We stabilize a conventional implementation of the fast multipole method (FMM) for low frequencies us...
Numerical study of the multipole expansion for the multilevel fast multipole algorithm (MLFMA) is pr...
We present a two-stage error estimation scheme for the fast multipole method (FMM). This scheme can ...
The Green's function is factorized by using the addition theorem which is the mathematical core of t...
We investigate error sources and their effects on the accuracy of solutions of extremely large elect...
The computational error of the multilevel fast multipole algorithm is studied. The error convergence...
The matrix-vector multiplication encountered in the iterative solution of scattering problems can be...
We present an efficient technique to reduce the interpolation and anterpolation (transpose interpola...
Novel formulas are presented that allow the rapid estimation of the number of terms L that needs to ...
Abstract—The multilevel fast multipole algorithm (MLFMA) is used in computing acoustic and electroma...
We present a low-frequency fast multipole method for the solution of three-dimensional electromagnet...
We present a new error control method that provides the truncation numbers as well as the required d...
IEEEThe current state-of-the-art error control of Multilevel Fast Multipole Algorithm (MLFMA) is val...
This paper presents an extension of a new approach to select the truncation number for translation o...
Multiple-precision arithmetic (MPA) is used to prevent low-frequency breakdowns in the diagonalizati...
We stabilize a conventional implementation of the fast multipole method (FMM) for low frequencies us...
Numerical study of the multipole expansion for the multilevel fast multipole algorithm (MLFMA) is pr...
We present a two-stage error estimation scheme for the fast multipole method (FMM). This scheme can ...
The Green's function is factorized by using the addition theorem which is the mathematical core of t...
We investigate error sources and their effects on the accuracy of solutions of extremely large elect...
The computational error of the multilevel fast multipole algorithm is studied. The error convergence...
The matrix-vector multiplication encountered in the iterative solution of scattering problems can be...
We present an efficient technique to reduce the interpolation and anterpolation (transpose interpola...
Novel formulas are presented that allow the rapid estimation of the number of terms L that needs to ...
Abstract—The multilevel fast multipole algorithm (MLFMA) is used in computing acoustic and electroma...
We present a low-frequency fast multipole method for the solution of three-dimensional electromagnet...